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首页> 外文期刊>Journal of cell biology >Transformation of Drosophila melanogaster with the wild-type myosin heavy-chain gene: rescue of mutant phenotypes and analysis of defects caused by overexpression.
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Transformation of Drosophila melanogaster with the wild-type myosin heavy-chain gene: rescue of mutant phenotypes and analysis of defects caused by overexpression.

机译:用野生型肌球蛋白重链基因转化果蝇的果蝇:挽救突变表型和分析过表达引起的缺陷。

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We have transformed Drosophila melanogaster with a genomic construct containing the entire wild-type myosin heavy-chain gene, Mhc, together with approximately 9 kb of flanking DNA on each side. Three independent lines stably express myosin heavy-chain protein (MHC) at approximately wild-type levels. The MHC produced is functional since it rescues the mutant phenotypes of a number of different Mhc alleles: the amorphic allele Mhc1, the indirect flight muscle and jump muscle-specific amorphic allele Mhc10, and the hypomorphic allele Mhc2. We show that the Mhc2 mutation is due to the insertion of a transposable element in an intron of Mhc. Since a reduction in MHC in the indirect flight muscles alters the myosin/actin protein ratio and results in myofibrillar defects, we determined the effects of an increase in the effective copy number of Mhc. The presence of four copies of Mhc results in overabundance of the protein and a flightless phenotype. Electron microscopy reveals concomitant defects in the indirect flight muscles, with excess thick filaments at the periphery of the myofibrils. Further increases in copy number are lethal. These results demonstrate the usefulness and potential of the transgenic system to study myosin function in Drosophila. They also show that overexpression of wild-type protein in muscle may disrupt the function of not only the indirect flight but also other muscles of the organism.
机译:我们用含有完整野生型肌球蛋白重链基因Mhc的基因组构建体转化了果蝇,在每侧约有9 kb的侧翼DNA。三个独立的品系稳定表达肌球蛋白重链蛋白(MHC),处于大约野生型水平。产生的MHC具有功能性,因为它可以挽救许多不同的Mhc等位基因的突变表型:无定形等位基因Mhc1,间接飞行肌肉和跳跃肌肉特有的无定形等位基因Mhc10和低变等位基因Mhc2。我们表明,Mhc2突变是由于在Mhc的内含子中插入了转座因子。由于间接飞行肌肉中MHC的降低会改变肌球蛋白/肌动蛋白的蛋白质比例并导致肌原纤维缺损,因此我们确定了Mhc有效拷贝数增加的影响。四个拷贝的Mhc的存在会导致蛋白质过量和无法飞行的表型。电子显微镜检查显示间接飞行肌肉中伴有缺陷,肌原纤维的外围有过多的粗丝。复制数量的进一步增加是致命的。这些结果证明了转基因系统在果蝇中研究肌球蛋白功能的有用性和潜力。他们还表明,野生型蛋白质在肌肉中的过度表达不仅可能破坏生物的间接飞行功能,还会破坏生物的其他肌肉。

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